Milde MB, Bertrand O, Benosman R, Egelhaaf M, Chicca E. Bioinspired event-driven collision avoidance algorithm based on optic flow. In: 2015 International Conference on Event-based Control, Communication, and Signal Processing (EBCCSP). IEEE; 2015.Any mobile agent, whether biological or robotic, needs to avoid collisions with obstacles. Insects, such as bees and flies, use optic flow to estimate the relative nearness to obstacles. Optic flow induced by ego-motion is composed of a translational and a rotational component. The segregation of both components is computationally and thus energetically expensive. Flies and bees actively separate the rotational and translational optic flow components via behaviour, i.e. by employing a saccadic s...
Motion has been examined in biology to be a critical component for obstacle avoidance and navigation...
Motion has been examined in biology to be a critical component for obstacle avoidance and navigation...
Babies B, Lindemann JP, Egelhaaf M, Möller R. Contrast-Independent Biologically Inspired Motion Dete...
Any mobile agent, whether biological or robotic, needs to avoid collisions with obstacles. Insects, ...
Bertrand O, Lindemann JP, Egelhaaf M. A Bio-inspired Collision Avoidance Model Based on Spatial Info...
<div><p>Avoiding collisions is one of the most basic needs of any mobile agent, both biological and ...
International audienceFlying insects and birds are able to fly smartly in an unpredictable environme...
International audienceFlying insects and birds are able to fly smartly in an unpredictable environme...
International audienceFlying insects are able to fly smartly in an unpredictable environment. It has...
International audienceFlying insects are able to fly smartly in an unpredictable environment. It has...
International audienceFlying insects are able to fly smartly in an unpredictable environment. It has...
International audienceFlying insects and birds are able to fly smartly in an unpredictable environme...
Biological systems consistently outperform autonomous systems governed by engineered algorithms in t...
This paper proposes a secondary reactive collision avoidance system for micro class of robots based ...
Motion has been examined in biology to be a critical component for obstacle avoidance and navigation...
Motion has been examined in biology to be a critical component for obstacle avoidance and navigation...
Motion has been examined in biology to be a critical component for obstacle avoidance and navigation...
Babies B, Lindemann JP, Egelhaaf M, Möller R. Contrast-Independent Biologically Inspired Motion Dete...
Any mobile agent, whether biological or robotic, needs to avoid collisions with obstacles. Insects, ...
Bertrand O, Lindemann JP, Egelhaaf M. A Bio-inspired Collision Avoidance Model Based on Spatial Info...
<div><p>Avoiding collisions is one of the most basic needs of any mobile agent, both biological and ...
International audienceFlying insects and birds are able to fly smartly in an unpredictable environme...
International audienceFlying insects and birds are able to fly smartly in an unpredictable environme...
International audienceFlying insects are able to fly smartly in an unpredictable environment. It has...
International audienceFlying insects are able to fly smartly in an unpredictable environment. It has...
International audienceFlying insects are able to fly smartly in an unpredictable environment. It has...
International audienceFlying insects and birds are able to fly smartly in an unpredictable environme...
Biological systems consistently outperform autonomous systems governed by engineered algorithms in t...
This paper proposes a secondary reactive collision avoidance system for micro class of robots based ...
Motion has been examined in biology to be a critical component for obstacle avoidance and navigation...
Motion has been examined in biology to be a critical component for obstacle avoidance and navigation...
Motion has been examined in biology to be a critical component for obstacle avoidance and navigation...
Babies B, Lindemann JP, Egelhaaf M, Möller R. Contrast-Independent Biologically Inspired Motion Dete...